Title :
Electromagnetic Actuator Implementation and Control for Resonance Vibration Reduction in Miniature Magnetically Levitated Rotating Machines
Author :
Yang, Sheng-Ming
Author_Institution :
Dept. of Electr. Eng., Nat. Taipei Univ. of Technol., Taipei, Taiwan
Abstract :
In miniature magnetically levitated rotating machines, permanent magnet bearings are generally used for rotor levitation in the radial directions, while electromagnetic actuators are used for stabilization in the axial direction. Rotor radial oscillations are inevitable in this configuration because no controllable force is applicable in these directions. The oscillations become excessively large as the rotor is running at speeds near the rotor´s resonant frequency. This paper presents an implementation and control scheme for an electromagnetic actuator for these machines. The proposed actuator can produce axial as well as radial forces on the rotor. The axial force is used for rotor axial direction control, while the radial force is used to assist in rotor resonance-related oscillation suppression. Theoretical analysis and experimental investigations of the proposed actuator control are performed.
Keywords :
electric machines; electromagnetic actuators; machine bearings; machine control; magnetic levitation; permanent magnet machines; rotors; vibration control; controllable force; electromagnetic actuator; magnetically levitated rotating machines; permanent magnet bearings; resonance vibration reduction control; rotor axial direction control; rotor axial force control; rotor levitation; rotor radial oscillation; rotor resonance-related oscillation suppression; rotor resonant frequency; Electromagnetic force; electromagnets; force control; magnetic bearing; magnetic force; magnetic levitation; permanent magnet (PM); position control; radial force; resonant vibration;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2010.2046000